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有氧代谢对快肌中肌苷酸积累的影响。

Influence of aerobic metabolism on IMP accumulation in fast-twitch muscle.

作者信息

Dudley G A, Terjung R L

出版信息

Am J Physiol. 1985 Jan;248(1 Pt 1):C37-42. doi: 10.1152/ajpcell.1985.248.1.C37.

Abstract

Significant activation of AMP deaminase in fast-twitch muscle leads to a loss of ATP and accumulation of NH4 and IMP. Although this occurs during severe metabolic stress caused by intense contraction conditions, the process is probably influenced by the muscle's capacity for aerobic metabolism. We evaluated this possibility during moderately intense (5 Hz) contraction conditions in situ by following the time course of NH4 and IMP accumulation in fast-twitch, low-oxidative white (FTW) and fast-twitch, high-oxidative red (FTR) muscle of the rat. A high rate of IMP formation, resulting in a 50% loss of ATP content, occurred in normal FTW, but not FTR muscle, during contractions when blood flow was intact. Eliminating blood flow prior to contractions, however, removed the distinction between the FTR and FTW muscle. The FTR fiber section now produced a high IMP content and a stoichiometric loss of ATP. Thus the ability of the FTR fiber to sustain this contraction effort without an ATP loss is due to its greater functional capacity for aerobic metabolism. The FTW muscle section of trained animals exhibited a reduced accumulation of IMP and a smaller loss of ATP during the same 5-Hz stimulation. The mitochondrial content and peak blood flow of this FTW fiber section is increased by training. Thus it is probable that the cellular conditions leading to a significant accumulation of IMP in fast-twitch muscle are determined by the metabolic stress established by the contraction effort, relative to the muscle fiber's functional capacity for aerobic metabolism.

摘要

快肌中腺苷酸脱氨酶的显著激活会导致ATP的损失以及NH4和IMP的积累。尽管这发生在由强烈收缩条件引起的严重代谢应激期间,但该过程可能受肌肉有氧代谢能力的影响。我们通过追踪大鼠快肌、低氧化的白色(FTW)和快肌、高氧化的红色(FTR)肌肉中NH4和IMP积累的时间进程,在中等强度(5Hz)原位收缩条件下评估了这种可能性。在血流完整的收缩过程中,正常的FTW肌肉而非FTR肌肉中出现了高IMP形成率,导致ATP含量损失50%。然而,在收缩前消除血流则消除了FTR和FTW肌肉之间的差异。现在FTR纤维部分产生了高IMP含量和化学计量的ATP损失。因此,FTR纤维在不损失ATP的情况下维持这种收缩努力的能力归因于其更大的有氧代谢功能能力。在相同的5Hz刺激下,训练动物的FTW肌肉部分表现出IMP积累减少和ATP损失较小。训练增加了该FTW纤维部分的线粒体含量和峰值血流。因此,导致快肌中IMP显著积累的细胞条件可能由收缩努力建立的代谢应激决定,相对于肌肉纤维的有氧代谢功能能力而言。

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